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Incorporation of a compression term in a CFD model based on the mixture approach to simulate activated sludge sedimentation

机译:在基于混合方法的CFD模型中纳入压缩项以模拟活性污泥沉降

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The modeling of Secondary Settling Tanks has become an important decision tool due to its use in assisting tank design, troubleshooting, optimization and control. The density currents created by the dispersed phase (sludge) and the turbulence generated at the inlet make this phenomenon three-dimensional. This research is focused on a CFD tool development including not only the hydrodynamics of the settling tank but also the recent advances in both hindered and compression settling modeling. The existing OpenFOAM (R) solver driftFluxFoam, which calculates the settling velocity of the dispersed phase as the drift velocity, was improved by adding in the model equation a power-function and a second order derivative term to describe hindered settling and compression respectively. The modified solver was validated against batch settling experimental data. Consequently, simulations were made using an axisymmetric circular clarifier geometry, to study the effects on the sludge blanket height and sludge concentration using the compression function. (C) 2019 Elsevier Inc. All rights reserved.
机译:由于辅助沉降池的建模可用于辅助池的设计,故障排除,优化和控制,因此已成为重要的决策工具。由分散相(淤泥)产生的密度电流和在入口处产生的湍流使这种现象成为三维的。这项研究的重点是CFD工具的开发,不仅包括沉降池的流体动力学特性,还包括受阻沉降模型和压缩沉降模型的最新进展。现有的OpenFOAM(R)解算器driftFluxFoam(将分散相的沉降速度计算为漂移速度)通过在模型方程中添加幂函数和二阶导数项来分别描述受阻沉降和压缩来改进。修改后的求解器已针对批次沉降实验数据进行了验证。因此,使用轴对称圆形澄清池几何结构进行了模拟,以使用压缩函数研究对污泥层高度和污泥浓度的影响。 (C)2019 Elsevier Inc.保留所有权利。

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